4.5 Article

Freezeout properties of different light nuclei at the RHIC beam energy scan

Journal

EUROPEAN PHYSICAL JOURNAL PLUS
Volume 136, Issue 10, Pages -

Publisher

SPRINGER HEIDELBERG
DOI: 10.1140/epjp/s13360-021-02089-1

Keywords

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Funding

  1. National Natural Science Foundation of China [11875052, 11575190, 11135011, 12175115]
  2. Natural Science Foundation of Shandong Province, China [ZR2020MA097]
  3. Ajman University [DGSR Ref.2021-IRG-HBS-12]

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By analyzing the transverse momentum spectra of light nuclei in Au-Au collisions using the blast wave model, it was observed that the kinetic freezeout temperature, transverse flow velocity, and kinetic freezeout volume exhibit saturation from 14.5-39 GeV, indicating a possible phase transition at 39 GeV. Furthermore, there is a decreasing trend in these parameters from central to peripheral collisions. Moreover, the triton freezeout volume was found to be smaller than that of deuteron and anti-deuteron, suggesting an earlier freezeout for triton.
We study the transverse momentum spectra of light nuclei (deuteron, anti-deuteron and triton) produced in Gold-Gold (Au-Au) collisions in different centrality bins by the blast wave model with Tsallis statistics. The model results are in agreement with the experimental data measured by STAR Collaboration in special transverse momentum ranges. We extracted the kinetic freezeout temperature, transverse flow velocity and kinetic freezeout volume. It is observed that kinetic freezeout temperature and transverse flow velocity increases initially, and then saturates from 14.5-39 GeV, while the kinetic freezeout volume increase initially up to 19.6 GeV but saturates from 19.6-39 GeV. This may indicate that the phase transition starts in part volume that ends in the whole volume at 39 GeV and the critical point may exists somewhere in the energy range of 14.5-39 GeV. The present work observed that the kinetic freezeout temperature, transverse flow velocity and kinetic freezeout volume has a decreasing trend from central to peripheral collisions. We found the freezeout volume of triton is smaller than those of deuteron and anti-deuteron, which shows that triton freezeout earlier than that of deuteron and anti-deuteron.

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